Nuclear Magnetic Resonance (NMR) crystallography and solid-state spectroscopy are powerful techniques used to investigate the structures and dynamics of materials at the atomic level. These ...
Dynamic Nuclear Polarization (DNP) and Solid-State Nuclear Magnetic Resonance (ssNMR) spectroscopy are powerful techniques used to study the structure and dynamics of biomolecules at the atomic level.
The Nuclear Magnetic Resonance Core supports MSK researchers by providing essential analytical services, access and education for analytical instrumentation and related shared scientific resources.
Nuclear Magnetic Resonance (NMR) was first experimentally observed in late 1945, nearly simultaneously by the research groups of Felix Bloch, at Stanford University and Edward Purcell at Harvard ...
Nuclear magnetic resonance (NMR) is ubiquitous in chemistry and materials science. One of the reasons for its widespread popularity is because NMR is able to provide valuable information on the ...
This NMR Facility has capabilities for solution-state, solid-state, gaseous-state, rheo, diffusion, and MRI (magnetic resonance imaging). A short introduction to NMR spectroscopy can be found here.
Equipped with 600 MHz and 700MHz spectrometers equipped with a salt-tolerant 13C-enhanced triple resonance cryo-probe, a 1H,13C capillary flow probe and liquid handling robot and a 1.7mm ...
The Nuclear Magnetic Resonance Spectroscopy Lab features a state-of-the-art JEOL 400 MHz NMR equipped with auto sampling and automatic tuning & matching. The instrument can perform temperature and ...
BrisSynBio is supported via the excellent NMR facilities that are situated in the School of Chemistry. These include a range of NMR machines, including a state of the art 700 MHz spectrometer equipped ...
Nuclear Magnetic Resonance (NMR) spectroscopy is a useful tool for exploring various domains across the natural sciences. NMR is well-suited to the analysis of molecular properties, such as the ...